Abstract
Dynamics on free energy surfaces with high activation barriers are usually treated by few-state kinetics models, yielding characteristic rate coefficients and amplitudes depending on the connectivity of the states. When the barriers are low (<3 kT), the assumption of instantaneous equilibration of the transition state, and hence, the few-state kinetics treatment, break down. Langevin dynamics is used here to explore the characteristic trends that occur in such cases, as a function of barrier height, number of barriers, dimensionality of the free energy surface, and switching functions that describe how spectroscopic probes vary from reactant to product. The result is a systematic phenome-nological description of low barrier kinetics and dynamics. © 2005 Wiley Periodicals, Inc.
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Ma, H., & Gruebele, M. (2006). Low barrier kinetics: Dependence on observables and free energy surface. Journal of Computational Chemistry, 27(2), 125–134. https://doi.org/10.1002/jcc.20311
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